Toshiba GRE110 Instruction Manual page 232

Overcurrent protection relay
Table of Contents

Advertisement

Menu
Name
OC
UC
Protection
EF
Range
OC2EN
Off / On
D / IEC / IEEE /
MOC2
US / C
MOC2C
NI / VI / EI / LTI
- IEC
MOC2C-
MI / VI / EI
IEEE
MOC2C-
CO2 / CO8
US
OC2R
DEF / DEP
OC2-2F
NA / Block
OC3EN
Off / On
OC3-2F
NA / Block
OC4EN
Off / On
OC4-2F
NA / Block
UC1EN
Off / On
UC2EN
Off / On
EF1EN
Off / On
D / IEC / IEEE /
MEF1
US / C
MEF1C-
NI / VI / EI / LTI
IEC
MEF1C-
MI / VI / EI
IEEE
MEF1C-
CO2 / CO8
US
EF1R
DEF / DEP
EF1-2F
NA / Block
EF2EN
Off / On
D / IEC / IEEE /
MEF2
US / C
MEF2C-
NI / VI / EI / LTI
IEC
MEF2C-
MI / VI / EI
IEEE
MEF2C-
CO2 / CO8
US
Contents
OC2 Enable
OC2 Delay Type
(if OC2EN=On)
OC2 IEC
Inverse Curve Type
(if MOC2=IEC)
OC2 IEEE
Inverse Curve Type
(if MOC2=IEEE)
OC2 US
Inverse Curve Type
(if MOC2=US)
OC2 Reset
characteristic.
(if MOC2=IEEE,US or C)
OC2 2f Block Enable
OC3 Enable
OC3 2f Block Enable
OC4 Enable
OC4 2f Block
Enable
UC1 Enable
UC2 Enable
EF1 Enable
EF1 Delay Type
(if EF1EN=On)
EF1 IEC Inverse
Curve Type
(if MEF1=IEC)
EF1 IEEE Inverse
Curve Type
(if MEF1=IEEE)
EF1 US Inverse
Curve Type
(if MEF1=US)
EF1 Reset
Characteristic.
(if MEF1=IEEE,US or C)
EF1 2f Block Enable
EF2 Enable
EF2 Delay Type
(if EF2EN=On)
EF2 IEC Inverse
Curve Type
(if MEF2=IEC)
EF2 IEEE Inverse
Curve Type
(if MEF2=IEEE)
EF2 US Inverse
Curve Type
(if MEF2=US)
 233 
6 F 2 T 0 1 7 2
Default
Off
D
NI
MI
CO2
DEF
NA
Off
NA
On
NA
Off
Off
On
D
NI
MI
CO2
DEF
NA
Off
D
NI
MI
CO2

Hide quick links:

Advertisement

Table of Contents
loading

Table of Contents